Literature DB >> 20490658

Impact of Mercury(II) on proteinase K catalytic center: investigations via classical and Born-Oppenheimer molecular dynamics.

Jarosław J Panek1, Riccardo Mazzarello, Marjana Novič, Aneta Jezierska-Mazzarello.   

Abstract

Mercury(II) has a strong affinity for the thiol groups in proteins often resulting in the disruption of their biological functions. In this study we present classical and first-principles, DFT-based molecular dynamics (MD) simulations of a complex of Hg(II) and proteinase K, a well-known serine protease with a very broad and diverse enzymatic activity. It contains a catalytic triad formed by Asp39, His69, and Ser224, which is responsible for its biological activity. It was found previously by X-ray diffraction experiments that the presence of Hg(II) inhibits the enzymatic action of proteinase K by affecting the stereochemistry of the triad. Our simulations predict that (i) the overall structure as well as the protein backbone dynamics are only slightly affected by the mercury cation, (ii) depending on the occupied mercury site, the hydrogen bonds of the catalytic triad are either severely disrupted (both bonds for mercury at site 1, and the His69-Ser224 contact for mercury at site 2) or slightly strengthened (the Asp39-His69 bond when mercury is at site 2), (iii) the network of hydrogen bonds of the catalytic triad is not static but undergoes constant fluctuations, which are significantly modified by the presence of the Hg(II) cation, influencing in turn the triad's ability to carry out the enzymatic function--these facts explain the experimental findings on the inhibition of proteinase K by Hg(II).

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Year:  2010        PMID: 20490658     DOI: 10.1007/s11030-010-9256-3

Source DB:  PubMed          Journal:  Mol Divers        ISSN: 1381-1991            Impact factor:   2.943


  27 in total

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7.  Structure of a ternary complex of proteinase K, mercury, and a substrate-analogue hexa-peptide at 2.2 A resolution.

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Journal:  Proteins       Date:  1996-06

8.  Computational studies of the coordination stereochemistry, bonding, and metal selectivity of mercury.

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Journal:  J Phys Chem A       Date:  2006-01-19       Impact factor: 2.781

9.  Studies on the inhibitory action of mercury upon proteinase K.

Authors:  A Müller; W Saenger
Journal:  J Biol Chem       Date:  1993-12-15       Impact factor: 5.157

10.  Three-dimensional structure of proteinase K at 0.15-nm resolution.

Authors:  C Betzel; G P Pal; W Saenger
Journal:  Eur J Biochem       Date:  1988-12-01
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